Condensed Matter Physics and Materials Science Department, Brookhaven National Laboratory, Upton, New York 11973, USA.
Phys Rev Lett. 2011 Dec 16;107(25):257001. doi: 10.1103/PhysRevLett.107.257001. Epub 2011 Dec 13.
We investigate the physical effects of translational symmetry breaking in Fe-based high-temperature superconductors due to alternating anion positions. In the representative parent compounds, including the newly discovered Fe-vacancy-ordered K(0.8)Fe(1.6)Se(2), an unusual change of orbital character is found across the one-Fe Brillouin zone upon unfolding the first-principles band structure and Fermi surfaces, suggesting that covering a larger one-Fe Brillouin zone is necessary in experiments. Most significantly, the electron pockets (critical to the magnetism and superconductivity) are found only created with broken symmetry, advocating strongly its full inclusion in future studies, particularly on the debated nodal structures of the superconducting order parameter.
我们研究了由于阴离子位置交替而导致铁基高温超导体中平移对称性破缺的物理效应。在代表性的母体化合物中,包括新发现的具有 Fe 空位有序的 K(0.8)Fe(1.6)Se(2),在展开第一性原理能带结构和费米面后,在一个 Fe 的第一布里渊区中发现了轨道特征的异常变化,这表明在实验中需要覆盖更大的一个 Fe 的第一布里渊区。最重要的是,只有在对称破缺的情况下才会发现电子口袋(对磁性和超导性至关重要),这强烈主张在未来的研究中充分考虑它,特别是在有争议的超导序参量的节点结构上。